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酵母转录因子IIB(TFIIB)的D1/E1核心螺旋和保守N端区域的突变分析:鉴定一种能稳定TATA结合蛋白-TFIIB-DNA复合物的N端突变体。

Mutational analysis of the D1/E1 core helices and the conserved N-terminal region of yeast transcription factor IIB (TFIIB): identification of an N-terminal mutant that stabilizes TATA-binding protein-TFIIB-DNA complexes.

作者信息

Bangur C S, Pardee T S, Ponticelli A S

机构信息

Department of Biochemistry and Center for Advanced Molecular Biology and Immunology, School of Medicine and Biomedical Sciences, State University of New York at Buffalo, 14214-3000, USA.

出版信息

Mol Cell Biol. 1997 Dec;17(12):6784-93. doi: 10.1128/MCB.17.12.6784.

Abstract

The general transcription factor IIB (TFIIB) plays an essential role in transcription of protein-coding genes by RNA polymerase II. We have used site-directed mutagenesis to assess the role of conserved amino acids in several important regions of yeast TFIIB. These include residues in the highly conserved amino-terminal region and basic residues in the D1 and E1 core domain alpha-helices. Acidic substitutions of residues K190 (D1) and K201 (E1) resulted in growth impairments in vivo, reduced basal transcriptional activity in vitro, and an inability to form stable TFIIB-TATA-binding protein-DNA (DB) complexes. Significantly, these mutants retained the ability to respond to acidic activators in vivo and to the Gal4-VP16 activator in vitro, supporting the view that these basic residues play a role in basal transcription. In addition, 14 single-amino-acid substitutions were introduced in the conserved amino-terminal region. Three of these mutants, the L50D, R64E, and R78L mutants, displayed altered growth properties in vivo and were compromised for supporting transcription in vitro. The L50D mutant was impaired for RNA polymerase II interaction, while the R64E mutant exhibited altered transcription start site selection both in vitro and in vivo and, surprisingly, was more active than the wild type in the formation of stable DB complexes. These results support the view that the amino-terminal domain is involved in the direct interaction between yeast TFIIB and RNA polymerase II and suggest that this domain may interact with DNA and/or modulate the formation of a DB complex.

摘要

通用转录因子IIB(TFIIB)在RNA聚合酶II对蛋白质编码基因的转录过程中发挥着至关重要的作用。我们利用定点诱变技术来评估酵母TFIIB几个重要区域中保守氨基酸的作用。这些区域包括高度保守的氨基末端区域的残基以及D1和E1核心结构域α螺旋中的碱性残基。对残基K190(D1)和K201(E1)进行酸性取代导致体内生长受损、体外基础转录活性降低以及无法形成稳定的TFIIB- TATA结合蛋白-DNA(DB)复合物。值得注意的是,这些突变体在体内保留了对酸性激活剂以及在体外对Gal4-VP16激活剂作出反应的能力,这支持了这些碱性残基在基础转录中起作用的观点。此外,在保守的氨基末端区域引入了14个单氨基酸取代。其中三个突变体,即L50D、R64E和R78L突变体,在体内表现出改变的生长特性,并且在体外支持转录的能力受到损害。L�0D突变体在与RNA聚合酶II相互作用方面存在缺陷,而R64E突变体在体外和体内均表现出转录起始位点选择的改变,令人惊讶的是,它在形成稳定的DB复合物方面比野生型更活跃。这些结果支持了氨基末端结构域参与酵母TFIIB与RNA聚合酶II之间直接相互作用的观点,并表明该结构域可能与DNA相互作用和/或调节DB复合物的形成。

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